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Spin structure and spin Hall magnetoresistance of epitaxial thin films of the insulating non-collinear antiferromagnet SmFeO3

机译:绝缘非共线性反霉素SMFEO3外延薄膜外延薄膜的旋转结构和旋转霍尔磁阻

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摘要

We report a combined study of imaging the antiferromagnetic (AFM) spin structure and measuring the spin Hall magnetoresistance (SMR) in epitaxial thin films of the insulating non-collinear antiferromagnet SmFeO3. X-ray magnetic linear dichroism photoemission electron microscopy measurements reveal that the AFM spins of the SmFeO3(110) align in the plane of the film. Angularly dependent magnetoresistance measurements show that SmFeO3/Ta bilayers exhibit a positive SMR, in contrast to the negative SMR expected in previously studied collinear AFMs. The SMR amplitude increases linearly with increasing external magnetic field at higher magnetic fields, suggesting that field-induced canting of the AFM spins plays an important role. In contrast, around the coercive field, no detectable SMR signal is observed, indicating that the SMR of the AFM and canting magnetization components cancel out. Below 50 K. the SMR amplitude increases sizably by a factor of two as compared to room temperature, which likely correlates with the long-range ordering of the Sm ions. Our results show that the SMR is a sensitive technique for non-equilibrium spin systems of noncollinear AFMs.
机译:我们报告了对绝缘非共线性反霉菌SmfeO3绝缘非共线膜的外延薄膜中的旋转磁性(AFM)旋转结构并测量旋转霍米磁阻(SMR)的组合研究。 X射线磁性线性二色性光曝光电子显微镜测量显示SMFEO3(110)的AFM旋转在薄膜的平面上对齐。角度依赖性磁阻测量表明,与预先研究的共线AFMS预期的负面SMR相比,SMFEO3 / TA双层表现出阳性SMR。 SMR幅度随着较高磁场的外部磁场而线性增加,表明现场诱导的AFM旋转起着重要作用。相反,在矫顽方围绕矫顽方,没有观察到可检测的SMR信号,表明AFM和倾倒磁化分量的SMR抵消。低于50 K.与室温相比,SMR振幅随着2倍而增加,这可能与SM离子的远程排序相关。我们的研究结果表明,SMR是非均衡AFMS非平衡旋转系统的敏感技术。

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